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Robert Millikan and His Oil Drop Experiment
In 1902 Millikan married Greta Erwin Blanchard and they had three sons: Clark Blanchard, Glenn Allen, and Max Franklin. Right after that Millikan became a professor at the University of Chicago in 1910 a job he kept until 1921. (“The Nobel Prize 1923”).Also Millikan proved Einstein's all-essential photoelectric equation in 1912-1915. During World War 1 Millikan was the Vice-Chairman of the National Research Council also helping make anti-submarine and meteorological devices. From 1920-1923 he kept himself busy by exploring hot-spark spectroscopy of the elements. He won the Nobel Prize for physics in 1923. (“The Nobel Prize 1923”).Millikan died on the 19th of December, 1953 in San Marino, California (He was 85 years old). Millikan was a prolific author throughout his life. Millikan liked to play tennis and golf when he wasn’t a scientist. Millikan held honorary doctor’s degrees of some 25 distinct universities. (“The Nobel Prize 1923”). Millikan discoveries continue to be appreciated even soon after his death and will nonetheless be appreciated for the rest of time.
In 1909, Millikan performed an experiment that would earn him a Nobel Peace Prize for his discovery. (The Millikan Oil Drop Experiment) This experiment was called the Oil Drop experiment. It consisted of a tube-like chamber with two charged plates, a single positively charged and 1 negatively charged. The positively charged plate was in the middle even though the negatively charged plate was on the bottom. It also consisted of a microscope seeking into the bottom half of the chamber and an atomizer filled with oil attached to the prime of the chamber.
A flashlight was also present at the bottom of the chamber (The Editors of Encyclopædia Britannica). Using the above setup, Millikan was able to precisely measure the electrical charge of a single electron. This was the initial time anybody was capable to obtain this. He did it by making use of the atomizer to spray a mist of oil droplets into the best chamber and the force of gravity pulled a handful of droplets by means of a hole into the second chamber. When the droplets fell by way of the hole, they gained a adverse charged due to the metal plates that were ionized by radiation. A flashlight illuminated the droplets and by means of the microscope, Millikan was capable to measure the mass of the droplets.
The voltage of the metal plates could then be turned up or down, resulting in the motion of the droplet decreasing or escalating (The Editors of Encyclopædia Britannica). When the voltage was larger, the drop moved up, when the voltage was decrease, the drop moved down, and when the voltage was equal to the force of gravity, the drop remained still (Dewitt). Utilizing the quantity of voltage necessary to trigger the drop to remain still, and the mass of the droplet, Millikan was able to calculate the electric charge of the droplet. By repeating this method a number of times, Millikan was capable to establish that the electric charge on distinct drops is often a a number of of a single quantity, that number being the smallest worth. This quantity, approximately 1.602×10^-9.
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